References
- Feng, T. W., 2000, "Fall-cone penetration and water content relationship of clays", Geotechnique 50, No.2, pp.181-187 https://doi.org/10.1680/geot.2000.50.2.181
- Houlsby, G. T., 1982, "Theoretical analysis of the fall cone test", Geotechnique 32, No. 2, pp.111-118 https://doi.org/10.1680/geot.1982.32.2.111
- Jayawardena and Eiji, Izawa., 1994, "A New Chemical Index of Weathering for Metamorphic Silicate Rocks in Tropical Regions : A study from Sri Lanka", Engineering Geology, Vol. 36, pp.303-310 https://doi.org/10.1016/0013-7952(94)90011-6
- Koumoto, T. and Houlsby, G. T., 2001, "Theory and practice of the fall cone test", Geotechnique 51, No.8, pp.701-712 https://doi.org/10.1680/geot.51.8.701.40475
- Park, B. K., Lee, K. C., 1999, "Evaluation Methods of Weathering Degree for Korean Decomposed Granite Soils", Journal of Korean Geotechnical Society Vol.15, No.1, pp.127-140
- Reiche, P., 1943, "Reiche, Graphic representation of chemical weathering", Journal of Sedimentary Petrology 13, pp. 58-68
- Ruxton, B. P., 1968, "Measures of the degree of chemical weathering of rocks", Journal of Geology 76, pp. 518-527 https://doi.org/10.1086/627357
- Sueoka, T., 1988, "Identification and Classification of Granite Residual Soils Using Chemical Weathering Index", Second Int. Conf. Geomech. Trop. Soils, Singapore 1, pp. 55-61
- Wood, D. M., 1982, "Cone penetrometer and liquid limit", Cambridge University Engineering Department, Technical notes, pp.152-157
- Wood, D. M., 1985, "Some fall cone tests", Cambridge University Engineering Department, Technical notes, pp.64-68
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